Match List-$I$ with List-$II$:
List-$I$ (Complexes) List-$II$ (Hybridisation)
$A$. $[Ni(CO)_4]$ $I$. $sp^3$
$B$. $[Cu(NH_3)_4]^{2+}$ $II$. $dsp^2$
$C$. $[Fe(NH_3)_6]^{2+}$ $III$. $sp^3d^2$
$D$. $[Fe(H_2O)_6]^{2+}$ $IV$. $d^2sp^3$

  • A
    $A-II, B-I, C-III, D-IV$
  • B
    $A-I, B-II, C-III, D-IV$
  • C
    $A-II, B-I, C-IV, D-III$
  • D
    $A-I, B-II, C-IV, D-III$

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Similar Questions

The geometries of some complex ions are given below. Select the correct answer.
$(1) [Ag(NH_3)_2]^+ - \text{Linear}$
$(2) [MnCl_4]^{2-} - \text{Tetrahedral}$
$(3) [Cu(NH_3)_4]^{2+} - \text{Square planar}$
$(4) [Ni(CN)_4]^{2-} - \text{Square planar}$

Difficult
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Match List-$I$ with List-$II$.
List-$I$ List-$II$
$A$. $[MnBr_4]^{2-}$ $I$. $d^2sp^3$ and diamagnetic
$B$. $[FeF_6]^{3-}$ $II$. $sp^3d^2$ and paramagnetic
$C$. $[Co(C_2O_4)_3]^{3-}$ $III$. $sp^3$ and diamagnetic
$D$. $[Ni(CO)_4]$ $IV$. $sp^3$ and paramagnetic

Choose the correct answer from the options given below:

Which one of the following ions is not tetrahedral in shape?

Identify the correct set for the $[Co(NH_3)_6]^{3+}$ ion regarding the hybridization of $Co^{3+}$,type of complex,and the number of unpaired electrons in the complex ion,respectively.

Complexes $(ML_5)$ of metals $Ni$ and $Fe$ have ideal square pyramidal and trigonal bipyramidal geometries,respectively. The sum of the $90^{\circ}$,$120^{\circ}$ and $180^{\circ}$ $L-M-L$ angles in the two complexes is

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